首页> 外文期刊>Journal of Engineering for Gas Turbines and Power >Identification of Rotordynamic Forces in a Flexible Rotor System Using Magnetic Bearings
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Identification of Rotordynamic Forces in a Flexible Rotor System Using Magnetic Bearings

机译:使用电磁轴承识别挠性转子系统中的转子动力

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摘要

A method is presented for parameter identification of an annular gas seal on a flexible-rotor test rig. Dynamic loads are applied by magnetic bearings (MBs) that support the rotor. MB forces are measured using fiber-optic strain gauges that are bonded to the poles of the MBs. In addition to force and position measurements, a finite element rotor model is required for the identification algorithm. The FE rotor model matches free-free characteristics of the test rotor. The addition of smooth air sealed to the system introduces stiffness and damping terms for identification that are representative of reaction forces in turbomachines. Tests are performed to experimentally determine seal stiffness and damping coefficients for different running speeds and preswirl conditions. Stiffness and damping coefficients are determined using a frequency domain identification method. This method uses an iterative approach to minimize error between theoretical and experimental transfer functions. Test results produce seal coefficients with low uncertainties.
机译:提出了一种在挠性转子试验台上对环形气密封件进行参数识别的方法。动载荷由支撑转子的电磁轴承(MBs)施加。 MB力是使用结合到MB极上的光纤应变仪测量的。除了力和位置测量外,识别算法还需要有限元转子模型。 FE转子模型匹配测试转子的自由特性。向系统中添加平滑的空气密封引入了用于识别的刚度和阻尼项,这些项代表了涡轮机械中的反作用力。进行测试以通过实验确定不同运行速度和预旋流条件下的密封刚度和阻尼系数。使用频域识别方法确定刚度和阻尼系数。该方法使用迭代方法来最小化理论和实验传递函数之间的误差。测试结果产生的密封系数具有较低的不确定性。

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